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JOURNALS // Zhurnal Vychislitel'noi Matematiki i Matematicheskoi Fiziki // Archive

Zh. Vychisl. Mat. Mat. Fiz., 2025 Volume 65, Number 2, Pages 320–338 (Mi zvmmf11931)

Papers published in the English version of the journal

Asymptotic stability and approximate solutions to quadratic functional integral equations containing $\psi$-Riemann–Liouville fractional integral operator

Supriya Kumar Paul, Lakshmi Narayan Mishra

Department of Mathematics, School of Advanced Sciences, Vellore Institute of Technology, 632014, Vellore, Tamil Nadu, India

Abstract: This work includes the study of a quadratic functional integral equation by utilizing the generalized Riemann–Liouville fractional integral of order $\lambda>0$ with respect to an increasing and positive function $\psi$. The first aim of this study is to obtain the asymptotic stability of solutions for this generalized framework. The concepts of measure of noncompactness and fixed point theorem are used to prove this result. Moreover, the second aim of this study is to introduce a novel polynomial-based computational method to obtain approximate solutions for the considered problem. Besides, the results of the error analysis with discussions of the accuracy of solutions are presented in this article. To the best knowledge of the authors, this paper presents the first reference regarding the numerical methods for this generalized problem to obtain approximate solutions. Finally, two examples are discussed with the computational tables and convergence graphs to interpret the efficiency and applicability of the presented method.

Key words: asymptotic stability Hosoya polynomial, measure of noncompactness, functional integral equations.

Received: 26.09.2024
Revised: 03.10.2024
Accepted: 26.03.2025


 English version:
Computational Mathematics and Mathematical Physics, 2025, 65:2, 320–338


© Steklov Math. Inst. of RAS, 2025